An improved grooved aluminum profile

By introducing a synchronization component into the grooving aluminum profile, the synchronous movement of the moving plate is achieved using transmission wheels and transmission belts, solving the problem of complex operation in the prior art and improving operational efficiency and stability.

CN224284219UActive Publication Date: 2026-05-26JIANGSU KEYUAN ALUMINUM
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU KEYUAN ALUMINUM
Filing Date
2025-06-03
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing sliding aluminum profile requires operation of each set of rotating bolts when the moving plate moves, which is cumbersome and difficult, and may cause the limit plate to shift, affecting stability.

Method used

The system employs a synchronization component, including first and second drive wheels and a drive belt. The operation of a set of moving components drives all moving components on the same side to synchronize, simplifying the operation process.

Benefits of technology

It enables synchronous movement of the movable plate, improves operational efficiency, avoids the hassle of operating each set of rotating bolts individually, and enhances stability and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an improved sliding groove type aluminum profile, including an aluminum profile body. A sliding groove is formed at the bottom of the aluminum profile body, and symmetrical moving grooves are formed on both sides. Moving plates are movably arranged within the moving grooves. Multiple sets of moving components are arranged on the opposite sides of the two moving plates. Each moving component on each side is equipped with a synchronization component. There are two sets of synchronization components, each set of which is fitted over all the moving components on the same side. This device, through the synchronization components, drives all the moving components on each side. When one set of moving components on the same side is driven to operate, the synchronization component can drive the other moving components on the same side to operate simultaneously, pushing the moving plates. This eliminates the need to operate each set of moving components individually, improving efficiency and making it convenient and practical.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum profile technology, and in particular to an improved grooved aluminum profile. Background Technology

[0002] Aluminum profiles are also known as aluminum extrusion profiles.

[0003] Chinese Patent No. CN219932737U discloses a grooved aluminum profile. The side of the adjusting mechanism is fixedly connected to the side of the aluminum profile structure, and the side of the limiting mechanism is movably connected to the side of the adjusting mechanism. The aluminum profile structure includes an aluminum profile body, and a T-shaped groove is formed at the top of the aluminum profile body. This invention rotates the adjusting screw by rotating the handle, and the adjusting screw moves along the inner wall of the threaded sleeve through the thread, thereby pushing the limiting plate to move along the side of the T-shaped groove. This makes the limiting plate tightly adhere to the side of the slider installed in the T-shaped groove. Then, the fixing nut is tightened so that the side of the fixing nut is tightly adhered to the side of the threaded sleeve to fix the adjusting screw. This helps to avoid gaps between the slider and the groove, which would cause the slider to wobble when sliding, thus increasing the stability of the grooved aluminum profile.

[0004] Chinese patent CN221896923U discloses a grooved aluminum profile. It points out that the aforementioned patent achieves movement of the limiting plate by adjusting the rotation of screws. However, to achieve synchronous movement of the limiting plate, the adjusting screws on both sides need to rotate at the same frequency, which places excessive demands on the operator and is quite difficult. Otherwise, the limiting plate may shift relative to the T-shaped groove sidewall within the aluminum profile body, leading to unstable slider clamping. This patent addresses this issue by rotating a rotating disc of a bolt within a groove. The rotation of the bolt drives the threaded sleeve, which is threaded into it, to move, thus moving the moving plates. Two sets of moving plates move inward. By setting multiple sets of fixing sleeves and fixing rods, the moving plates can achieve synchronous movement, preventing shifting within the groove.

[0005] However, in the patent with publication number CN221896923U, although it does not shift within the groove, the rotating bolts on each side operate independently. When moving the moving plate, it is necessary to operate each set of rotating bolts, which is quite troublesome. Utility Model Content

[0006] In order to overcome the shortcomings of the existing technology, this utility model provides an improved sliding groove aluminum profile, which solves the problem that the existing device requires operating each set of rotating bolts when moving the moving plate, which is quite troublesome.

[0007] To solve the above-mentioned technical problems, this utility model provides the following technical solution: an improved sliding groove type aluminum profile, including an aluminum profile body, a sliding groove is opened at the bottom of the aluminum profile body, and moving grooves are symmetrically opened on both sides. Moving plates are movably arranged in the moving grooves. Multiple sets of moving components are arranged on the opposite side of the two moving plates. A synchronization component is arranged on each side of the moving component. There are two sets of synchronization components. Each set of synchronization components is sleeved on the outside of all moving components on the same side. It is used to drive all moving components on each side to operate synchronously when one set of moving components is operating.

[0008] Preferably, the synchronization component includes a first transmission wheel sleeved on the outside of one of the moving components on one side, and a second transmission wheel sleeved on the outside of the remaining moving components on the same side, with a transmission belt sleeved on the outside of the first and second transmission wheels.

[0009] Preferably, when the number of moving components on each side is two, the first and second drive wheels are pulleys, and the drive belt is a belt.

[0010] Preferably, when the number of moving components on each side is two or more, the first and second drive wheels are sprockets, and the drive belt is a chain.

[0011] Preferably, the moving component includes a plurality of internally threaded sleeves that are vertically fixed to the opposite side of the moving plate. The internally threaded sleeves are equidistantly distributed in the horizontal direction. The internally threaded sleeves are threadedly connected to threaded rods. One of the threaded rods extends through the aluminum profile body to the outside, and a handle is fixedly provided on the end extending to the outside. The remaining threaded rods are rotatably installed in the aluminum profile body.

[0012] Preferably, a plug is fixedly connected to one bottom side of the aluminum profile body, and a slot is opened at the bottom side of the other side corresponding to the plug. The plug is inserted into the slot. Multiple locking blocks are fixedly installed at equal intervals on the top wall of the slot. A locking groove is opened on the plug corresponding to the locking block, and the locking block is locked into the locking groove.

[0013] Preferably, the card block is made of rubber and is hemispherical in shape.

[0014] Preferably, the aluminum profile body has multiple sets of reinforcing ribs inside.

[0015] Compared with the prior art, the beneficial effects that this utility model can achieve are:

[0016] This device enables the operation of a set of moving components on each side of the aluminum profile body to drive the synchronous operation of the other moving components on the same side. Through the set synchronization component, the synchronization component is connected to all moving components on each side. When driving a set of moving components on the same side, the synchronization component can drive the other moving components on the same side to operate simultaneously and push the moving plate. It is no longer necessary to operate each set of moving components, which improves efficiency and makes it convenient and practical. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the front sectional view of the present invention;

[0018] Figure 2 This is a schematic diagram of the structure of the mobile component of this utility model;

[0019] Figure 3 This is a top view of the synchronization component of this utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the connecting component of this utility model;

[0021] The components are: 1. Aluminum profile body; 2. Moving groove; 3. Moving plate; 4. Reinforcing rib; 5. Threaded rod; 6. Handle; 7. Internal threaded sleeve; 8. Synchronization assembly; 801. First transmission wheel; 802. Second transmission wheel; 803. Transmission belt; 9. Insert block; 10. Slot; 11. Locking block; 12. Locking groove. Detailed Implementation

[0022] To make the technical means, creative features, and achieved objectives and effects of this utility model easier to understand, the present utility model is further described below with reference to specific embodiments. However, the following embodiments are merely preferred embodiments of this utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described herein without creative effort are all within the protection scope of this utility model. Unless otherwise specified, the experimental methods in the following embodiments are conventional methods, and the materials and reagents used in the following embodiments are commercially available unless otherwise specified.

[0023] Example 1

[0024] like Figure 1 , Figure 2 , Figure 3As shown, this utility model provides an improved sliding groove type aluminum profile, including an aluminum profile body 1. The bottom of the aluminum profile body 1 is provided with a sliding groove, and the two sides are symmetrically provided with moving grooves 2. Moving plates 3 are movably arranged in the moving grooves 2. Multiple sets of moving components are arranged on the opposite side of the two moving plates 3. Each side of the moving components is provided with a synchronization component 8. There are two sets of synchronization components 8. Each set of synchronization components 8 is sleeved on the outside of all the moving components on the same side. It is used to drive all the moving components on each side to operate synchronously when one set of moving components is operating.

[0025] The synchronization component 8 includes a first transmission wheel 801 sleeved on the outside of one of the moving components on one side, and a second transmission wheel 802 sleeved on the outside of the remaining moving components on the same side. A transmission belt 803 is sleeved on the outside of the first transmission wheel 801 and the second transmission wheel 802.

[0026] When the number of moving components on each side is two, the first transmission wheel 801 and the second transmission wheel 802 are pulleys, and the transmission belt 803 is a belt.

[0027] When the number of moving components on each side is two or more, the first transmission wheel 801 and the second transmission wheel 802 are sprockets, and the transmission belt 803 is a chain.

[0028] In this embodiment, the slider base is placed in the groove opened at the bottom of the aluminum profile body 1. A set of moving components on both sides of the aluminum profile body 1 are rotated respectively. The rotation of the moving components is converted into the linear motion of the moving plate 3, so that the moving plate 3 moves into the aluminum profile. When the moving components rotate, they drive the first transmission wheel 801 sleeved on them to rotate. The first transmission wheel 801 drives the second transmission wheel 802 to rotate through the transmission belt 803. The second transmission wheel 802 then drives the remaining moving components to rotate, so that all the moving components are synchronized and drive the moving plate 3 to move.

[0029] This embodiment enables the operation of a set of moving components on each side of the aluminum profile body 1 to drive the synchronous operation of the other moving components on the same side. Through the set synchronization component 8, the synchronization component 8 is connected to all moving components on each side. When driving a set of moving components on the same side to operate, the synchronization component 8 can drive the other moving components on the same side to operate simultaneously and push the moving plate 3. It is no longer necessary to operate each set of moving components, which improves efficiency and is convenient and practical.

[0030] Example 2

[0031] This embodiment is a further optimization based on Embodiment 1. The parts that are the same as those described above will not be repeated here. Figure 3As shown, to further better realize this utility model, the following configuration is specifically adopted: In this embodiment, the moving component includes a plurality of internally threaded sleeves 7 vertically fixedly connected to the opposite side of the moving plate 3. The internally threaded sleeves 7 are evenly distributed in the horizontal direction. The internally threaded sleeves 7 are threadedly connected to threaded rods 5. One of the threaded rods 5 extends through the aluminum profile body 1 to the outside, and a handle 6 is fixedly provided on the end extending to the outside. The remaining threaded rods 5 are rotatably installed in the aluminum profile body 1. The outer surface of the end of all the threaded rods 5 near the moving plate 3 is smooth and has no threads.

[0032] In this embodiment, the slider base is placed in the groove opened at the bottom of the aluminum profile body 1. When the handle 6 is turned, the handle 6 drives the threaded rod 5 connected to it to rotate. Since the threaded rod 5 is connected to the internal threaded sleeve 7, the internal threaded sleeve 7 moves outside the threaded rod 5. Depending on the rotation direction of the threaded rod 5, it moves away from the threaded rod 5 or moves closer to the threaded rod 5, thereby driving the moving plate 3 to move back and forth. The outer surface of the end of the threaded rod 5 near the moving plate 3 is smooth and has no threads to prevent the internal threaded sleeve 7 from disengaging from the threaded rod 5.

[0033] Example 3

[0034] This embodiment is a further optimization based on Embodiment 1. The parts that are the same as those described above will not be repeated here. Figure 1 , Figure 4 As shown, to further better realize this utility model, the following arrangement is specifically adopted: In this embodiment, a plug 9 is fixedly connected to the bottom of one side of the aluminum profile body 1, and a slot 10 is opened at the bottom of the other side corresponding to the plug 9. The plug 9 is inserted into the slot 10. Multiple locking blocks 11 are fixedly installed at equal intervals on the top wall of the slot 10. A slot 12 is opened on the plug 9 corresponding to the locking block 11, and the locking block 11 is locked into the slot 12.

[0035] Card 11 is made of rubber and is hemispherical in shape.

[0036] The aluminum profile body 1 has multiple sets of reinforcing ribs 4 inside.

[0037] In this embodiment, when connecting two aluminum profile bodies 1, the insert 9 of one aluminum profile body 1 is inserted into the slot 10 of the other aluminum profile body 1. When the insert 9 enters the slot 10, it squeezes the rubber locking block 11, causing the locking block 11 to deform. When the insert 9 is fully inserted into the slot 10, the locking block 11 contacts the slot 12 opened on the insert 9 and returns to its original shape to lock into the slot 12, thereby realizing the rapid splicing of the aluminum profile body 1 and facilitating rapid disassembly. The reinforcing ribs 4 provided can make the aluminum profile body 1 stronger and more resistant to pressure.

[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An improved sliding groove type aluminum profile, comprising an aluminum profile body (1), wherein a sliding groove is provided at the bottom of the aluminum profile body (1), and movable grooves (2) are symmetrically provided on both sides, wherein movable plates (3) are movably arranged in the movable grooves (2), and multiple sets of movable components are provided on the opposite sides of the two movable plates (3), characterized in that: Each of the moving components is provided with a synchronization component (8). There are two sets of synchronization components (8). Each set of synchronization components (8) is fitted outside all the moving components on the same side. It is used to drive all the moving components on each side to operate synchronously when one set of moving components is operating.

2. The improved grooved aluminum profile according to claim 1, characterized in that: The synchronization component (8) includes a first transmission wheel (801) sleeved on the outside of one of the moving components on one side, and a second transmission wheel (802) sleeved on the outside of the remaining moving components on the same side. A transmission belt (803) is sleeved on the outside of the first transmission wheel (801) and the second transmission wheel (802).

3. The improved grooved aluminum profile according to claim 2, characterized in that: When the number of moving components on each side is two, the first drive wheel (801) and the second drive wheel (802) are pulleys, and the drive belt (803) is a belt.

4. The improved grooved aluminum profile according to claim 2, characterized in that: When the number of moving components on each side is two or more, the first drive wheel (801) and the second drive wheel (802) are sprockets, and the drive belt (803) is a chain.

5. The improved grooved aluminum profile according to claim 1, characterized in that: The moving component includes multiple internally threaded sleeves (7) that are vertically fixed to the opposite side of the moving plate (3). Multiple internally threaded sleeves (7) are evenly distributed in the horizontal direction. The internally threaded sleeves (7) are threadedly connected to threaded rods (5). One of the threaded rods (5) extends through the aluminum profile body (1) to the outside, and a handle (6) is fixedly provided on the end extending to the outside. The remaining threaded rods (5) are rotatably installed inside the aluminum profile body (1).

6. The improved grooved aluminum profile according to claim 1, characterized in that: A plug (9) is fixedly connected to one bottom side of the aluminum profile body (1), and a slot (10) is opened at the bottom side of the other side corresponding to the plug (9). The plug (9) is inserted into the slot (10). Multiple locking blocks (11) are fixedly installed at equal intervals on the top wall of the slot (10). A slot (12) is opened on the plug (9) corresponding to the locking block (11). The locking block (11) is locked into the slot (12).

7. An improved grooved aluminum profile according to claim 6, characterized in that: The card block (11) is made of rubber and is hemispherical in shape.

8. The improved grooved aluminum profile according to claim 1, characterized in that: The aluminum profile body (1) is provided with multiple sets of reinforcing ribs (4).